APE1 is a multifunctional protein which plays a central role in the maintenance of nuclear and mitochondrial genomes repairing DNA lesions caused by oxidative and alkylating agents. In addition, it works as a redox signaling protein regulating gene expression by interacting with many transcriptional factors. Apart from these canonical activities, recent studies have shown that APE1 is also enzymatically active on RNA molecules. The present study unveils for the first time a new role of the mitochondrial form of APE1 protein in the metabolism of RNA in mitochondria. Our data demonstrate that APE1 is associated with mitochondrial messenger RNA and exerts endoribonuclease activity on abasic sites. Loss of APE1 results in the accumulation of damaged mitochondrial mRNA species, determining impairment in protein translation and reduced expression of mitochondrial-encoded proteins, finally leading to less efficient mitochondrial respiration. Altogether, our data demonstrate that APE1 plays an active role in the degradation of the mitochondrial mRNA and has a profound impact on mitochondrial well-being.
%0 Journal Article
%1 barchiesiDNARepairProtein2021
%A Barchiesi, Arianna
%A Bazzani, Veronica
%A Jabczynska, Agata
%A Borowski, Lukasz S.
%A Oeljeklaus, Silke
%A Warscheid, Bettina
%A Chacinska, Agnieszka
%A Szczesny, Roman J.
%A Vascotto, Carlo
%C Netherlands
%D 2021
%J Journal of molecular biology
%K *DNA 1,Cell Apyrimidinic Cells,Humans,mitochondria,Mitochondria/genetics/*metabolism,oxidative Lyase/genetics/*metabolism,HeLa Messenger/genetics/*metabolism,RNA Mitochondrial/genetics/*metabolism,RNA Nucleus/genetics/*metabolism,DNA-(Apurinic Phosphorylation,apurinic/apyrimidinic Repair,*Oxidative Site) Stress,RNA endonuclease or phosphorylation,Oxidative processing,to_read
%N 18
%P 167125
%R 10.1016/j.jmb.2021.167125
%T DNA Repair Protein APE1 Degrades Dysfunctional Abasic mRNA in Mitochondria Affecting Oxidative Phosphorylation.
%V 433
%X APE1 is a multifunctional protein which plays a central role in the maintenance of nuclear and mitochondrial genomes repairing DNA lesions caused by oxidative and alkylating agents. In addition, it works as a redox signaling protein regulating gene expression by interacting with many transcriptional factors. Apart from these canonical activities, recent studies have shown that APE1 is also enzymatically active on RNA molecules. The present study unveils for the first time a new role of the mitochondrial form of APE1 protein in the metabolism of RNA in mitochondria. Our data demonstrate that APE1 is associated with mitochondrial messenger RNA and exerts endoribonuclease activity on abasic sites. Loss of APE1 results in the accumulation of damaged mitochondrial mRNA species, determining impairment in protein translation and reduced expression of mitochondrial-encoded proteins, finally leading to less efficient mitochondrial respiration. Altogether, our data demonstrate that APE1 plays an active role in the degradation of the mitochondrial mRNA and has a profound impact on mitochondrial well-being.
@article{barchiesiDNARepairProtein2021,
abstract = {APE1 is a multifunctional protein which plays a central role in the maintenance of nuclear and mitochondrial genomes repairing DNA lesions caused by oxidative and alkylating agents. In addition, it works as a redox signaling protein regulating gene expression by interacting with many transcriptional factors. Apart from these canonical activities, recent studies have shown that APE1 is also enzymatically active on RNA molecules. The present study unveils for the first time a new role of the mitochondrial form of APE1 protein in the metabolism of RNA in mitochondria. Our data demonstrate that APE1 is associated with mitochondrial messenger RNA and exerts endoribonuclease activity on abasic sites. Loss of APE1 results in the accumulation of damaged mitochondrial mRNA species, determining impairment in protein translation and reduced expression of mitochondrial-encoded proteins, finally leading to less efficient mitochondrial respiration. Altogether, our data demonstrate that APE1 plays an active role in the degradation of the mitochondrial mRNA and has a profound impact on mitochondrial well-being.},
added-at = {2024-05-17T13:01:35.000+0200},
address = {Netherlands},
author = {Barchiesi, Arianna and Bazzani, Veronica and Jabczynska, Agata and Borowski, Lukasz S. and Oeljeklaus, Silke and Warscheid, Bettina and Chacinska, Agnieszka and Szczesny, Roman J. and Vascotto, Carlo},
biburl = {https://www.bibsonomy.org/bibtex/259fb400ae5bd423cdfc79baad6513847/warscheidlab},
copyright = {Copyright {\copyright} 2021 The Author(s). Published by Elsevier Ltd.. All rights reserved.},
doi = {10.1016/j.jmb.2021.167125},
interhash = {7481c3ba0aa6f246e739d4c2052d5bc3},
intrahash = {59fb400ae5bd423cdfc79baad6513847},
issn = {1089-8638 0022-2836},
journal = {Journal of molecular biology},
keywords = {*DNA 1,Cell Apyrimidinic Cells,Humans,mitochondria,Mitochondria/genetics/*metabolism,oxidative Lyase/genetics/*metabolism,HeLa Messenger/genetics/*metabolism,RNA Mitochondrial/genetics/*metabolism,RNA Nucleus/genetics/*metabolism,DNA-(Apurinic Phosphorylation,apurinic/apyrimidinic Repair,*Oxidative Site) Stress,RNA endonuclease or phosphorylation,Oxidative processing,to_read},
langid = {english},
month = sep,
number = 18,
pages = 167125,
pmid = {34224750},
timestamp = {2024-05-17T13:01:35.000+0200},
title = {{{DNA Repair Protein APE1 Degrades Dysfunctional Abasic mRNA}} in {{Mitochondria Affecting Oxidative Phosphorylation}}.},
volume = 433,
year = 2021
}